Literature DB >> 17922278

Cell therapy in myocardial infarction: emphasis on the role of MRI.

Yuxiang Ye1, Jan Bogaert.   

Abstract

Despite tremendous progress in myocardial infarct (MI) treatment, mortality rates remain substantial. Permanent loss of cardiomyocytes after ischemic injury, results in irreversible loss of myocardial contractility, reduction in ventricular performance, and may initiate the development of dilated heart failure. The discovery that pluripotent progenitor cells bear the capacity to differentiate to mature cardiac cells raised the hope of cell-based regenerative medicine. Engraftment of stem cells in the damaged myocardium, repair and functional improvement appeared suddenly a nearby reality. Promising results in animal models, and preliminary studies reporting the feasibility and safety of adult stem cell therapy in MI patients led to the first double-blinded randomized, placebo-controlled trials. The initial great enthusiasm for this paradigm shift in MI treatment has been tempered by the mainly negative or modestly positive study findings. Before new, larger clinical trials can be initiated, a number of critical questions and issues need to be considered starting with a scrutinized analysis of currently available data to extending our knowledge of the mechanism of scarless myocardial regeneration. Cardiac cell therapy necessitates a multidisciplinary approach, whereby imaging, in particular MRI, and the input of the imaging specialist is crucial to the success of cardiac cell regenerative medicine. MRI is an appealing technique for cell trafficking depicting engraftment, differentiation and survival. Endomyocardial cell administration can be achieved safely with MR fluoroscopy and MRI is without any doubt the most accurate and reproducible technique to measure study end-points.

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Year:  2007        PMID: 17922278     DOI: 10.1007/s00330-007-0777-9

Source DB:  PubMed          Journal:  Eur Radiol        ISSN: 0938-7994            Impact factor:   5.315


  139 in total

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Journal:  N Engl J Med       Date:  2002-01-03       Impact factor: 91.245

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  13 in total

1.  Labelling of mammalian cells for visualisation by MRI.

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4.  Polycationic nanoparticles: (1) synthesis of a polylysine-MION conjugate and its application in labeling fibroblasts.

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Journal:  J Cardiovasc Transl Res       Date:  2009-01-14       Impact factor: 4.132

5.  Labeling human embryonic stem-cell-derived cardiomyocytes for tracking with MR imaging.

Authors:  Rosalinda T Castaneda; Sophie Boddington; Tobias D Henning; Mike Wendland; Lydia Mandrussow; Siyuan Liu; Heike Daldrup-Link
Journal:  Pediatr Radiol       Date:  2011-05-19

6.  Embryonic stem cell-based cardiopatches improve cardiac function in infarcted rats.

Authors:  Jean-Paul Vallée; Mathieu Hauwel; Matthieu Lepetit-Coiffé; Wang Bei; Karin Montet-Abou; Paolo Meda; Stephany Gardier; Prisca Zammaretti; Thomas P Kraehenbuehl; Francois Herrmann; Jeffrey A Hubbell; Marisa E Jaconi
Journal:  Stem Cells Transl Med       Date:  2012-03-07       Impact factor: 6.940

7.  Functional and molecular imaging with MRI: potential applications in paediatric radiology.

Authors:  Owen J Arthurs; Ferdia A Gallagher
Journal:  Pediatr Radiol       Date:  2010-10-23

Review 8.  CMR of microvascular obstruction and hemorrhage in myocardial infarction.

Authors:  Katherine C Wu
Journal:  J Cardiovasc Magn Reson       Date:  2012-09-29       Impact factor: 5.364

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Authors:  Jan Bogaert; Ingo Eitel
Journal:  Glob Cardiol Sci Pract       Date:  2015-07-02

10.  Biological activity and magnetic resonance imaging of superparamagnetic iron oxide nanoparticles-labeled adipose-derived stem cells.

Authors:  Jingjing Fan; Yanbin Tan; Liyong Jie; Xinying Wu; Risheng Yu; Minming Zhang
Journal:  Stem Cell Res Ther       Date:  2013-04-23       Impact factor: 6.832

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